Fatty acid binding protein is a major determinant of hepatic pharmacokinetics of palmitate and its metabolites

Author:

Hung Daniel Y.1,Burczynski Frank J.2,Chang Ping1,Lewis Andrew3,Masci Paul P.1,Siebert Gerhard A.1,Anissimov Yuri G.1,Roberts Michael S.1

Affiliation:

1. Department of Medicine, Princess Alexandra Hospital, University of Queensland, Woolloongabba, Queensland Qld 4102, Australia;

2. Faculty of Pharmacy, University of Manitoba, Winnipeg, Manitoba, Canada R3T 2N2; and

3. Institute of Pharmaceutical Sciences, University of Nottingham NG7 2RD, United Kingdom

Abstract

Disposition kinetics of [3H]palmitate and its low-molecular-weight metabolites in perfused rat livers were studied using the multiple-indicator dilution technique, a selective assay for [3H]palmitate and its low-molecular-weight metabolites, and several physiologically based pharmacokinetic models. The level of liver fatty acid binding protein (L-FABP), other intrahepatic binding proteins (microsomal protein, albumin, and glutathione S-transferase) and the outflow profiles of [3H]palmitate and metabolites were measured in four experimental groups of rats: 1) males; 2) clofibrate-treated males; 3) females; and 4) pregnant females. A slow-diffusion/bound model was found to better describe the hepatic disposition of unchanged [3H]palmitate than other pharmacokinetic models. The L-FABP levels followed the order: pregnant female > clofibrate-treated male > female > male. Levels of other intrahepatic proteins did not differ significantly. The hepatic extraction ratio and mean transit time for unchanged palmitate, as well as the production of low-molecular-weight metabolites of palmitate and their retention in the liver, increased with increasing L-FABP levels. Palmitate metabolic clearance, permeability-surface area product, retention of palmitate by the liver, and cytoplasmic diffusion constant for unchanged [3H]palmitate also increased with increasing L-FABP levels. It is concluded that the variability in hepatic pharmacokinetics of unchanged [3H]palmitate and its low-molecular-weight metabolites in perfused rat livers is related to levels of L-FABP and not those of other intrahepatic proteins.

Publisher

American Physiological Society

Subject

Physiology (medical),Gastroenterology,Hepatology,Physiology

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